丹酚酸A结构式
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常用名 | 丹酚酸A | 英文名 | Salvianolic acid A |
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CAS号 | 96574-01-5 | 分子量 | 494.447 | |
密度 | 1.6±0.1 g/cm3 | 沸点 | 858.7±65.0 °C at 760 mmHg | |
分子式 | C26H22O10 | 熔点 | 164-167ºC | |
MSDS | 中文版 美版 | 闪点 | 292.9±27.8 °C |
丹酚酸A用途Salvianolic acid A 可通过抑制基质金属钛酶 9 (MMP-9) 和抗炎作用来保护血脑屏障。 |
中文名 | 丹酚酸 A |
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英文名 | Salvianolic Acid A |
中文别名 | 丹参酚酸A | 丹酚酸A | (2R)-3-(3,4-二羟基苯基)-2-[(E)-3-[2-[(E)-2-(3,4-二羟基苯基)乙烯基]-3,4-二羟基苯基]丙-2-烯酰]氧丙酸 |
英文别名 | 更多 |
描述 | Salvianolic acid A 可通过抑制基质金属钛酶 9 (MMP-9) 和抗炎作用来保护血脑屏障。 |
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相关类别 | |
靶点 |
MMP-9 |
体内研究 | 在丹酚酸A治疗组中观察到丹酚酸A(SAA)的显着有益效果。丹酚酸A(20mg/kg)可显着延长大鼠在平板上的保留时间。与假手术组相比,模型组脑水含量显着增加,丹酚酸A(10和20 mg/kg)显着减弱。与模型组相比,丹酚酸A(5,10和20 mg/kg)可维持神经元的正常结构,增加神经元数量。还发现丹酚酸A(20mg/kg)可显着降低I/R诱导的MMP-9上调。虽然MMP-2表达不受丹酚酸A的显着影响,但金属蛋白酶组织抑制剂(TIMPs)可通过与MMPs催化结构域的高亲和力结合来抑制MMP的活性[1]。 |
参考文献 |
密度 | 1.6±0.1 g/cm3 |
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沸点 | 858.7±65.0 °C at 760 mmHg |
熔点 | 164-167ºC |
分子式 | C26H22O10 |
分子量 | 494.447 |
闪点 | 292.9±27.8 °C |
精确质量 | 494.121307 |
PSA | 184.98000 |
LogP | 4.23 |
外观性状 | 黄色固体 |
蒸汽压 | 0.0±0.3 mmHg at 25°C |
折射率 | 1.790 |
储存条件 | Hygroscopic, -20°C Freezer, Under Inert Atmosphere |
水溶解性 | H2O: ≥19mg/mL |
安全声明 (欧洲) | 24/25 |
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危险品运输编码 | NONH for all modes of transport |
Surfactant-coated graphitized multiwalled carbon nanotubes as the pseudostationary phase in electrokinetic chromatography for the analysis of phytochemical compounds in biological fluids.
Electrophoresis 36(7-8) , 1055-63, (2015) This report describes the use of surfactant-coated graphitized multiwalled carbon nanotubes (SC-GMWNTs) as a novel pseudostationary phase in CE with diode array detection for the determination of phen... |
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Simultaneous determination of six phenolic constituents of Danshen injection in rat plasma by LC-ESI-MS and its application to a pharmacokinetic study.
Eur. J. Mass Spectrom. (Chichester, Eng.) 17(4) , 395-403, (2011) Salvianolic acid A, salvianolic acid B, danshensu, protocatechuic aldehyde, rosmarinic acid and lithospermic acid are the six major active constituents in Danshen injection. In this study, a rapid, se... |
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In silico analysis and experimental validation of molecular mechanisms of salvianolic acid A-inhibited LPS-stimulated inflammation, in RAW264.7 macrophages.
Cell Prolif. 46(5) , 595-605, (2013) The aim of this study was to explore mechanisms by which salvianolic acid A (SAA) revealed its anti-inflammatory activity, in lipopolysaccharide (LPS)-stimulated RAW264.7 cells.Nitric oxide (NO) conce... |
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